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Remote Materials Science Jobs in New York (NOW HIRING)

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Remote Materials Science information

See New York salary details

$58K

$135.6K

$189.3K

How much do remote materials science jobs pay per year?

As of Sep 6, 2026, the average yearly pay for remote materials science in New York is $135,631.00, according to ZipRecruiter salary data. Most workers in this role earn between $102,300.00 and $182,700.00 per year, depending on experience, location, and employer.

What is a remote materials science?

A Remote Materials Science job involves researching, analyzing, and developing materials while working remotely. Professionals in this field study the properties and applications of metals, polymers, ceramics, and composites, often using virtual simulations, data analysis tools, and remote lab access. They collaborate with teams via digital platforms, conduct experiments, and optimize materials for industries like aerospace, electronics, and healthcare. This role requires strong technical skills, self-motivation, and the ability to communicate findings effectively with remote teams.

What are the typical responsibilities of a remote materials science professional, and how does the remote aspect impact daily work?

As a Remote Materials Science professional, your daily tasks often include analyzing materials data, conducting research projects, running simulations, preparing technical reports, and collaborating with engineering or R&D teams via virtual meetings. The remote environment means you’ll rely heavily on digital collaboration tools for sharing results and coordinating experiments, and may need to be proactive in communicating with colleagues across time zones. While you may occasionally visit laboratories for hands-on testing, most work is completed independently from your home or a remote office. This setup allows for increased flexibility but also requires strong self-motivation and organizational skills to manage multiple projects efficiently.

What are the key skills and qualifications needed to thrive in the remote materials science position, and why are they important?

To thrive in Remote Materials Science, you need a solid background in materials engineering or chemistry, data analysis, and scientific research, typically with at least a bachelor's or master's degree in a related field. Familiarity with simulation software (such as MATLAB, COMSOL, or Materials Studio), laboratory data management tools, and possibly industry certifications can be highly beneficial. Strong communication, time management, and problem-solving skills are essential for effective remote collaboration and project completion. These capabilities are crucial for contributing to innovative materials solutions and achieving research or product development goals in a remote setting.

What are the most commonly searched types of Materials Science jobs in New York?

The most popular types of Materials Science jobs in New York are:

What are popular job titles related to Remote Materials Science jobs in New York?

For Remote Materials Science jobs in New York, the most frequently searched job titles are:

What cities in New York are hiring for Remote Materials Science jobs?

Cities in New York with the most Remote Materials Science job openings:

Infographic showing various Remote Materials Science job openings in New York as of August 2026, with employment types broken down into 5% Internship, 81% Full Time, and 14% Part Time. Highlights an 100% Remote job distribution, with an average salary of $135,631 per year, or $65.2 per hour.

Remote | Materials Scientist (Semiconductors & Molecular Modeling) Up to $60/hour

24-Mag Llc

Manhattan, NY • On-site, Remote

$60/hr

Part-time, Contractor

This job post has expired 2 days ago. Applications are no longer accepted.


Job description

Remote | Materials Scientist (Semiconductors & Molecular Modeling)New York, New York, United StatesWe are sharing a specialised part-time consulting opportunity for PhD-level materials scientists with strong expertise in semiconductor materials, molecular modelling, scientific computing, and research-grade programming.

This role focuses on designing original, executable computational problems based on authentic materials science research workflows. Selected experts will develop challenging coding-based tasks, create rigorous reference solutions and grading criteria, and test and refine problems until they require genuine research-level scientific and computational reasoning.

Key ResponsibilitiesMaterials Science Problem DesignDevelop original research-level computational problems in materials scienceBuild tasks from published papers, public datasets, open-source repositories, or independently designed scientific scenariosCreate problems requiring multi-step scientific and computational reasoningEnsure tasks reflect realistic research workflows rather than standard textbook exercisesDesign problems with scientifically defensible and reproducible solutionsSemiconductor MaterialsDevelop computational tasks involving semiconductor materials and their propertiesCreate problems requiring analysis of structure-property relationships and material behaviourIncorporate realistic modelling assumptions, physical constraints, and material parametersDesign tasks requiring interpretation of simulation or experimental-style outputsApply deep semiconductor materials expertise to task validation and difficulty calibrationMolecular ModelingCreate problems involving molecular and atomistic modellingDevelop workflows requiring simulation, structural analysis, or quantitative interpretationEvaluate modelling assumptions, boundary conditions, parameters, and numerical outputsIncorporate realistic edge cases and computational limitationsEnsure tasks require genuine understanding of molecular modelling methodsScientific Computing & ProgrammingWrite and validate scientific workflows using Python, R, or another relevant programming languageDevelop computational setups, reference calculations, and validation scriptsDebug numerical, modelling, and implementation issuesBuild reproducible workflows suitable for automated evaluationEnsure code accurately implements the underlying scientific problemResearch Task DevelopmentSource appropriate scientific material from papers, datasets, repositories, or original scenariosTranslate complex research material into clearly specified computational tasksDefine inputs, assumptions, constraints, and expected outputsCreate assignments requiring both materials expertise and coding proficiencyEnsure difficulty arises from scientific reasoning rather than unnecessary complexityReference Solutions & Grading CriteriaProduce authoritative reference solutions and supporting calculationsDefine clear criteria describing what constitutes a correct solutionIdentify essential scientific reasoning steps and computational outputsDevelop grading logic capable of distinguishing correct solutions from plausible but flawed approachesEnsure evaluation standards remain precise and reproducibleTesting & Difficulty CalibrationTest tasks against advanced computational systemsAnalyse common scientific, numerical, and reasoning failure modesRefine prompts, inputs, constraints, and expected outputs based on testingAdjust difficulty while preserving scientific validityFinalise tasks only when they reliably require advanced materials science expertiseResearch Engineering WorkflowWork through a Git/GitHub pull-request workflowRun and validate code within Docker-based environmentsRespond to automated quality checks and reviewer feedbackMaintain clean, reproducible code and supporting documentationCollaborate effectively within structured scientific software workflowsIdeal ProfilePhD required in Materials Science, Materials Engineering, Applied Physics, Chemistry, Chemical Engineering, or a closely related fieldDemonstrated expertise in both semiconductor materials and molecular modelingStrong working proficiency in Python, R, or another scientific programming languageHands-on experience using scientific code for materials modelling, simulation, numerical analysis, or computational researchComfortable with Git/GitHubExperience running code in Docker or other containerised environmentsStrong understanding of reproducible scientific computingAbility to translate advanced materials research into clearly defined computational problemsPeer-reviewed publications are highly valuedPrior scientific software or research engineering experience is advantageousStrong written communication and ability to document scientific assumptions, methods, and solutions preciselyEngagement DetailsPart-time independent contractor engagementFully remote20+ hours per weekInitial duration of approximately 6 weeksImmediate startCompensation: Up to $60/hourWork includes materials science problem design, scientific coding, reference-solution development, grading criteria, testing, and task refinementProjects may be extended, shortened, or concluded based on project needs and performanceWork must be completed without using confidential or proprietary information belonging to any employer, client, institution, or other third partyH1-B and STEM OPT support is unavailable for this engagementThis opportunity is available through 24-MAG LLC. We connect experienced professionals with remote consulting opportunities across technical, evaluation, and project-based workstreams.

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